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首页> 外文期刊>Analytical chemistry >Low-Energy Ion-Surface Reactions of Pyrazine with Two Classes of Self-Assembled Monolayers:Influence of Alkyl Chain Orientation
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Low-Energy Ion-Surface Reactions of Pyrazine with Two Classes of Self-Assembled Monolayers:Influence of Alkyl Chain Orientation

机译:吡嗪与两类自组装单分子膜的低能离子表面反应:烷基链取向的影响

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摘要

Collisions of pyrazine with two classer of self-assembled monolayer (SAM) films are employed to determine whether surface confinement and the resulting alkyl chain orientation,influences low-energy ion-surface reactions. SAM filma formed from n-alkanethiols (CH_3(CH_2)_n-S-Au, n = 14-17) and 4-(4-alkoxyphenylabenzenethiols (4-4-CH_3(CH_2)_mOC_6H_4)-C_6H_4-S-Au,m = 14-17)chemisorbed onto Au (111) substrates are known to exhibit a chain-lenth-dependent odd-even effect that places the terminal C-C bond into diffect crientations.Ionsurface collisions (20 eV) of pyrazine molecular ion(M = m/z 80) with these surfaces yield reaction product ions corresponding to the addition of hydrogen atoms ([M + H]~+ = m/z 81) and methyl groups ([M + CH_3]~+ = m/z 95)from the surface to the probe ion.Differences in the relative abundance of the reaction product ions are measured as a function of chain length for both classes of SAM film.SAM films with odd chain lengths (n,m = 14 and 16) have a consistently higher abundance of H addition product ions than SAM films with even chain lengths (n,m = 15 and 17).Alternationg reactivity is also observed for the addition of CH_3,with methyl addition occurring more readily on even-chain-length films.The variations are consistent with the well-characterized orientation differences known to exist for films of this type.Specifically,odd-chain-length films are oriented such that the last C-C bond is more parallel to the plane of the surface than it is for even-chain-length films.The critical element of the parallel orientation is that it leaves,on average,one hydrogen atom on the terminal methyl and both hydrogen atom on the first underlying methylene in more reactive positions compared to even chain lengths.Conversely,the trend on the relative abundance of CH_3 addition indicates that the orientation produced by an even-chain-length film,with the last C-C bond more perpendicular to the surface,allows the probe ion better acces to the methyl carbon.Reflection absorption IR spectroscopy (RAIRS)data independently confirm the orientational disposition of the films.The RAIRS data show that the odd-even effect is less dramatic for the n-alkanethiols when compared to 4-(4-alkoxyphenyl)-benzenethiols.A smaller difference in ion-surface reactivity is measured for n-alkanethiols,demonstrating that ion-surface reactions can distinguish subtle differences in average orientation.In short,we report that the extent of ion-surface reactions of pyrazine ion with two classes of SAM films is directed by the spatial orientation of the surface-confined species that participate in the reaction.
机译:吡嗪与两类自组装单层(SAM)膜的碰撞用于确定表面限制和所得的烷基链取向是否影响低能离子表面反应。由正烷硫醇(CH_3(CH_2)_n-S-Au,n = 14-17)和4-(4-烷氧基苯基苯硫醇(4-4-CH_3(CH_2)_mOC_6H_4)-C_6H_4-S-Au,m形成的SAM膜= 14-17)已知化学吸附到Au(111)衬底上会表现出链长相关的奇偶效应,该效应将末端CC键置于衍射取向上。吡嗪分子离子的离子表面碰撞(20 eV)(M = m / z 80)在这些表面产生对应于氢原子([M + H]〜+ = m / z 81)和甲基([M + CH_3]〜+ = m / z 95)加成的反应产物离子两种类型的SAM膜的反应产物离子的相对丰度差异均是链长的函数。具有奇数链长(n,m = 14和16)的SAM膜始终如一H加成产物离子的丰度比具有均匀链长(n,m = 15和17)的SAM膜高。另外,CH_3的加成反应性也观察到,偶数c上的甲基加成更容易发生这种变化与已知的这类薄膜的定向特性差异相一致。特别是,奇数链长的薄膜的取向使得最后一个CC键更平行于表面平面与偶数链长的薄膜相比,平行取向的关键因素是,与偶数链相比,平均而言,它在末端甲基上留下一个氢原子,在下面的第一个亚甲基上留下两个氢原子,它们的反应性更高。相反,CH_3添加相对丰度的趋势表明,由平均链长的薄膜产生的取向具有最后一个CC键更垂直于表面,使得探针离子可以更好地进入甲基碳。吸收红外光谱(RAIRS)数据独立地确认了薄膜的取向分布.RAIRS数据显示,与4-(4-正烷硫醇的离子表面反应性差异较小,表明离子表面反应可以区分平均取向的细微差别。简而言之,我们报道吡嗪离子的离子表面反应程度具有两类SAM膜的膜是通过参与反应的表面受限物质的空间取向来控制的。

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